Ye Yating, Vega Martín L, Sánchez Montero M J, López-Díaz D, Velázquez M M, Merchán M D
Departamento de Química Física, Facultad de Ciencias Químicas, Universidad de Salamanca, E-37008 Salamanca, Spain.
Grupo de Nanotecnología, Universidad de Salamanca, E37008 Salamanca, Spain.
Ind Eng Chem Res. 2022 Jan 26;61(3):1332-1343. doi: 10.1021/acs.iecr.1c02922. Epub 2022 Jan 13.
The reduction of CO emissions and its elimination from the atmosphere has become one of the major problems worldwide, since CO is the main cause of the greenhouse effect and climate change. In recent years, a great number of carbonaceous materials that can be used as CO adsorbents have been synthesized. The strategy is usually to synthesize the materials and determine their adsorption capacity without studying previously the factors that influence this capacity. In this work, different properties of the adsorbents are analyzed to study their influence on the CO adsorption capacity. For this purpose, 10 adsorbents have been synthesized using different strategies and characterized with X-ray photoelectron spectroscopy, X-ray diffraction, and micro-Raman spectroscopy. The percentage of sp carbons, the position of the D + D' peak of the second-order Raman spectrum, the micropore volume, and the grain size of the C sp domains have been related to the amount of CO adsorbed by the adsorbents. The results confirm a linear relationship between the volume of the micropores and the CO uptake and it proves that CO retention is favored in those materials that, in addition to having a high volume of micropores, also have low grain size of C.
减少一氧化碳(CO)排放并将其从大气中消除已成为全球主要问题之一,因为CO是温室效应和气候变化的主要原因。近年来,已合成了大量可作为CO吸附剂的含碳材料。通常的策略是合成材料并确定其吸附能力,而无需事先研究影响该能力的因素。在这项工作中,分析了吸附剂的不同特性以研究它们对CO吸附能力的影响。为此,使用不同策略合成了10种吸附剂,并用X射线光电子能谱、X射线衍射和显微拉曼光谱对其进行了表征。sp碳的百分比、二阶拉曼光谱中D + D'峰的位置、微孔体积以及C sp域的晶粒尺寸与吸附剂吸附的CO量相关。结果证实了微孔体积与CO吸收之间的线性关系,并且证明在那些除了具有高微孔体积外还具有低C晶粒尺寸的材料中有利于CO保留。